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首页> 外文期刊>Nanoscale >Theranostic probe for simultaneous in vivo photoacoustic imaging and confined photothermolysis by pulsed laser at 1064 nm in 4T1 breast cancer model
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Theranostic probe for simultaneous in vivo photoacoustic imaging and confined photothermolysis by pulsed laser at 1064 nm in 4T1 breast cancer model

机译:同时体内Theranostic探针光声成像和局限photothermolysis脉冲激光在1064海里4 t1乳腺癌模型

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Here, we report that polyethylene glycol (PEG)-coated copper(II) sulfide nanoparticles (PEG-CuS NPs) with their peak absorption tuned to 1064 nm could be used both as a contrast agent for photoacoustic tomographic imaging of mouse tumor vasculature and as a mediator for confined photothermolysis of tumor cells in an orthotopic syngeneic 4T1 breast tumor model. PEG-CuS NPs showed stronger photoacoustic signal than hollow gold nanospheres and single-wall carbon nanotubes at 1064 nm. MicroPET imaging of 4T1 tumor-bearing mice showed a gradual accumulation of the NPs in the tumor over time. About 6.5% of injected dose were taken up in each gram of tumor tissue at 24 h after intravenous injection of ~(64)Cu-labeled PEG-CuS NPs. For both photoacoustic imaging and therapeutic studies, nanosecond (ns)-pulsed laser was delivered with Q-switched Nd:YAG at a wavelength of 1064 nm. Unlike conventional photothermal ablation therapy mediated by continuous wave laser with which heat could spread to the surrounding normal tissue, interaction of CuS NPs with short pulsed laser deliver heat rapidly to the treatment volume keeping the thermal damage confined to the target tissues. Our data demonstrated that it is possible to use a single-compartment nanoplatform to achieve both photoacoustic tomography and highly selective tumor destruction at 1064 nm in small animals.
机译:在这里,我们报告,聚乙二醇(挂钩)涂铜(II)硫化物纳米粒子(PEG-CuS NPs)和峰值吸收调谐可以使用1064 nm作为对比剂光声层析成像的老鼠肿瘤脉管系统和作为封闭的中介photothermolysis肿瘤细胞的原位同系的4 t1乳腺癌肿瘤模型。显示更强比空心光声信号金团簇和着单壁球长大的碳纳米管在1064纳米。老鼠显示NPs的逐步积累随着时间的推移肿瘤。在每克被肿瘤组织在24吗静脉注射后h ~ (64) Cu-labeledPEG-CuS NPs。治疗研究纳秒脉冲激光(ns)是用q开关Nd: YAG在吗波长为1064 nm。光热光谱分析由消融治疗连续波激光的热量扩散到周围的正常组织,交互CuS NPs的短脉冲激光体积提供热量迅速治疗保持热损伤局限于目标组织。可以使用单舱nanoplatform实现光声层析成像和高度选择性肿瘤破坏在1064海里小动物。

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